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Preparation of multi-interfacial ZnO particles and their growth mechanism

机译:多界面ZnO颗粒的制备及其生长机理

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ZnO particles with multi-interfacial morphologies such as flower-like shape, prickly sphere and floccu-lence structure, were synthesized by hydrothermal process under atmospheric pressure at about 373 K by adjusting zinc contained salts and the dosage of NaOH. Kinetic investigations on the growth of the related multi-interfacial ZnO revealed that the process consisted of two first-order reactions, and the reaction rate constants of the nucleation (k1) were less than those of the crystal growth (k2). For several kinds of zinc salts, say Zn(NO3)2·6H2O, Zn(CH3COO)2·2H2O, ZnSO4·7H2O or ZnCl2, the k, are 0.057, 0.054, 0.054 and 0.094 min~(-1), respectively, and accordingly, the values of k2 are 0.413, 0.357, 0.116 and 0.025 min~(-1). The electronegativity of the anions and the basicity of the solutions are the key factors which govern the process of the crystallization and sequentially the morphology of the particles. The possible mechanism for the growth of the multi-interfacial morphologies is proposed that the positive surfaces ((000 1) and/or (0001) planes) are inclined to enrich negative ions, leading to restraining the essentially dominant growth along c-axis and sequentially the morphology.
机译:通过在约373 K的大气压下,通过水热工艺,通过调节含锌盐和NaOH的用量,在大气压下合成了具有多界面形如花状,多刺球状和絮状结构的ZnO颗粒。对相关多界面ZnO生长的动力学研究表明,该过程由两个一级反应组成,成核反应速率常数(k1)小于晶体生长反应速率常数(k2)。对于几种锌盐,例如Zn(NO3)2·6H2O,Zn(CH3COO)2·2H2O,ZnSO4·7H2O或ZnCl2,k分别为0.057、0.054、0.054和0.094 min〜(-1),因此,k2的值为0.413、0.357、0.116和0.025 min〜(-1)。阴离子的电负性和溶液的碱度是控制结晶过程和颗粒形态的关键因素。提出了生长多界面形态的可能机制,即正表面((000 1)和/或(0001)面)倾向于富集负离子,从而限制了沿c轴和c轴的主要增长。顺序地形态。

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